Using source transformation, calculate the value of Ig (in amps). (disregard the direction or polarity, consider the magnitude only) R2 20 U93 R36N E 20 V 120R E A6
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- What is CEMF?a. If you do not go completely around the loop when applying Kirchhoff’s voltage law, then the algebraic sum of the voltages cannot be determined the algebraic sum of the voltages will always be positive the algebraic sum of the voltages will always be negative the algebraic sum is the voltage between the start and finish points b. A p -type semiconductor is a semiconductor doped with impurity atoms whose electron valence is +4 pentavalent impurity atoms trivalent impurity atomsaloulated m O1 the value you Up = A cos wt +1o Calaulate maarli)-min(i) =? Use constant voltage drop mad. Don7 to write units. . - 3.7V forget
- For Fixed Bias Configuration Solve for Ib, Ic and le. Atleast 2 decimal place. Be mindful of units. Assume Ic is not equal to le. ... 4 RC 15002 RB VCC 20V 90A/A 100k2 Ib=Blank 1 HA Ic=Blank 2mA le=Blank 3 mA Blank 1 Add your answer Blank 2 Add your answer Blank 3 Add your answerAN Sesli oku 1-In the circuit designed to measure the effective value of the sinusoidal voltage at the input, diodes are considered ideal. M deflection is a measuring element with rotating coil. Rm32k İm-(10)^-4 A. A- Draw the waveform of the current flowing through M on a scale. Determine the resistance value of R1 so that the nominal voltage value of V-m is 100V. B-What should the tolerances of the resistors be so that the Vm class is at most 1.5? (resistors have the same tolerances) ult) R2 本 R3 20k 18k R4 k: k2 10kIn a rectifier circuit , DC output voltage and RMS output voltage is 0.3 V & 0.55 V respectively. The form factor of this circuit is a. 3.67 b. 0.55 c. 1.35 d. 1.83
- In the circuit below, we have a Zener Diode circuit with a load, RL. Use the same measurements for source voltage V1 and resistor R3 resistance as in the circuit schematic. V1 -15V R3 2700 D1 1N753A RL Determine the lowest possible value for the load RL, so that the voltage drop across it is equal to the Zener voltage. For your diode, use model Zener 1N753A. This diode has a Zener voltage of 6.2V, a Zener current of 60mA, a Zener impedence of 72, and a test current of 20mA.O * 33% A moodle1.du.edu.om e SIM aY The measured temperature is 173 OF and the reference is 45 °F. The voltage. in mV is Select one: O a. 4.643 O b. 4.097 O e. 3.732 O d. -3.732 Previous page Next pagePart1: Resistors connected in series to each other The circuit shown below was generated on MapleSIM 2019 Voltmeter 1 Voltmeter 2 Voltmeter 3 Ammeter 2 Ammeter 1 RI=25Ohms R2=500hms R3=750hms Ammeter 3 6V The response of this circuit, i.e., the values of the probes measuring voltages and currents was simulated for a total time of 10s. The simulated data is shown below * Analysis Window: Simulation Results E Probe Pluts - Simulation Results V Stored Results Ammeter 3i Ammeter li Ammeter 21 0.050 0 050- 0 050- 0.045 0.045 0.045- Vanables 0 040 O 040 0 040 Find 0.035- 0.035 0.035- Main No Stored Resut Selected 0030- 0030 0 030 16 41 16 2 6 7 8 Hot Windovs Senes Datas. Veltmeter 1v Valtmeter 2y Volmeter 3.v 4.5- 65 ala Probe Plots E Ammeter J E Aeter 2a B Ammotor 3.1 E Voltmeter 1v Av voltmeter Z.v 05 3.5 Vettreeter 3.N 1.5 25 -05- -0.5 14- 21 1.5 12 10 12 10
- Q: - Consider the circuit in Figure a) What type of circuit is this? b) Find and Sketch the voltage waveform across RL, assume the diodes are practical. 4:1 D, 120 V rms c) If sin wave with 100µf connected in parallel with the resistor, calculate the ripple сарacitor is 60 HZ 1.0 kN D2 factor lllee lelll10 K D3 The diodes in the circuit are Silicon with forward voltage of 0.7 V. Fill up the table showing the state, voltage and current of each of the diodes. Show how you validated the state of each diode. Follow the reference shown in determining whether the diode voltages and currents are positive or negative. D1 8 K 5 V 1K D2 f)1 mA Diode State VD İD + Vp D1 すー D2 D3liting Q9. For the circuit shown in Figure C9, Calculate the following i) Current through the Silicon diode (Isi). ii) Current through the Resistor R2 (1). iii) Current through the diode D4 (IGe4). iv) Voltage at points V3 and V4. Is D1. D2 Si Si oV4 RI 1.3K2 R3 2.7K R2 3K2 IGe4| 15V D5 Si 03 D4 Ge Ge V2 1V Figure C9